Field of the Invention
[0001] The present invention relates to the papermaking arts. More specifically, the present
invention relates to fabrics, such as forming fabrics, for use with a paper making
machine.
Description of the Prior Art
[0002] During the papermaking process, a cellulosic fibrous web is formed by depositing
a fibrous slurry, that is, an aqueous dispersion of cellulose fibers, onto a moving
forming fabric in the forming section of a paper machine. A large amount of water
is drained from the slurry through the forming fabric, leaving the cellulosic fibrous
web on the surface of the forming fabric.
[0003] The newly formed cellulosic fibrous web proceeds from the forming section to a press
section, which includes a series of press nips. The cellulosic fibrous web passes
through the press nips supported by a press fabric, or, as is often the case, between
two such press fabrics. In the press nips, the cellulosic fibrous web is subjected
to compressive forces which squeeze water therefrom, and which adhere the cellulosic
fibers in the web to one another to turn the cellulosic fibrous web into a paper sheet.
The water is accepted by the press fabric or fabrics and, ideally, does not return
to the paper sheet.
[0004] It should be appreciated that the forming, press and dryer fabrics all take the form
of endless loops on the paper machine and function in the manner of conveyors. It
should further be appreciated that paper manufacture is a continuous process which
proceeds at considerable speeds. That is to say, the fibrous slurry is continuously
deposited onto the forming fabric in the forming section, while a newly manufactured
paper sheet is continuously wound onto rolls after it exits from the dryer section.
[0005] Press fabrics also participate in the finishing of the surface of the paper sheet.
That is, press fabrics are designed to have smooth surfaces and uniformly resilient
structures, so that, in the course of passing through the press nips, a smooth, mark-free
surface is imparted to the paper.
[0006] Press fabrics accept the large quantities of water extracted from the wet paper in
the press nip. In order to fill this function, there literally must be space, commonly
referred to as void volume, within the press fabric for the water to go, and the fabric
must have adequate permeability to water for its entire useful life. Finally, press
fabrics must be able to prevent the water accepted from the wet paper from returning
to and rewetting the paper upon exit from the press nip.
[0007] The paper sheet finally proceeds to a dryer section, which includes at least one
series of rotatable dryer drums or cylinders, which are internally heated by steam.
The newly formed paper sheet is directed in a serpentine path sequentially around
each in the series of drums by a dryer fabric, which holds the paper sheet closely
against the surfaces of the drums. The heated drums reduce the water content of the
paper sheet to a desirable level through evaporation.
[0008] Woven fabrics take many different forms. For example, they may be woven endless,
or flat woven and subsequently rendered into endless form with a seam.
[0009] The present invention relates specifically to the forming fabrics used in the forming
section. Forming fabrics play a critical role during the paper manufacturing process.
One of its functions, as implied above, is to form and convey the paper product being
manufactured to the press section.
[0010] However, forming fabrics also need to address water removal and sheet formation issues.
That is, forming fabrics are designed to allow water to pass through (i.e. control
the rate of drainage) while at the same time prevent fiber and other solids from passing
through with the water. If drainage occurs too rapidly or too slowly, the sheet quality
and machine efficiency suffers. To control drainage, the space within the forming
fabric for the water to drain, commonly referred to as void volume, must be properly
designed.
[0011] Contemporary forming fabrics are produced in a wide variety of styles designed to
meet the requirements of the paper machines on which they are installed for the paper
grades being manufactured. Generally, they comprise a base fabric woven from monofilament
and may be single-layered or multi-layered. The yarns are typically extruded from
any one of several synthetic polymeric resins, such as polyamide and polyester resins,
used for this purpose by those of ordinary skill in the paper machine clothing arts.
[0012] The design of forming fabrics additionally involves a compromise between the desired
fiber support and fabric stability. A fine mesh fabric may provide the desired paper
surface and fiber support properties, but such design may lack the desired stability
resulting in a short fabric life. By contrast, coarse mesh fabrics provide stability
and long life at the expense of fiber support and the potential for marking. To minimize
the design tradeoff and optimize both support and stability, multi-layer fabrics were
developed. For example, in double and triple layer fabrics, the forming side is designed
for sheet and fiber support while the wear side is designed for stability, void volume,
and wear resistance.
[0013] Both double layer and triple layer fabrics are commonly used within the paper industry.
A typical double layer fabric comprises a set of forming weft yarns (shutes) and a
set of wear weft yarns interwoven by a set of warp yarns. Whereas, triple layer fabrics
essentially consist of two fabrics, the forming layer and the wear layer, held together
by binding yarns. For either type of fabric, the binding is extremely important to
the overall integrity of the fabric. One problem with multi-layer fabrics has been
relative slippage between the layers which breaks down the fabric over time. In addition,
the binding yarns can disrupt the structure of the forming layer resulting in marking
of the paper.
[0014] Multi-layer fabrics often incorporate a "paired binder yarn" concept in which two
binder yarns act together (i.e. as a pair) to effectively weave one unbroken contour
in the top surface of the fabric. References describing fabrics with paired binder
yarns include
U.S. Patent 5,967,195 (the "Ward" patent),
U.S. Patent 5,826,627 (the "Seabrook" patent), and
U.S. Patent 4,501,303 (the "Österberg" patent).
[0015] Those skilled in the art will appreciate that fabrics are created by weaving, and
have a weave pattern which repeats in both the warp or machine direction (MD) and
the weft or cross-machine direction (CD).
[0016] Multi-layer fabrics, such as triple layer fabrics, may have unacceptable resistance
to internal abrasion and/or the weave may loosen (i.e. the yarns may slide from their
original positions within the pattern) during use. The present invention provides
a fabric which overcomes such disadvantages.
[0017] WO 2004/111333 A discloses a paper making fabric having the features of the preamble of claim 1.
SUMMARY OF THE INVENTION
[0018] Accordingly, the present invention is a multi-layer fabric which may be usable in
the forming, pressing and/or drying sections of a paper making machine.
[0019] The present invention relates to a papermaker's fabric as claimed in claims 1 and
11.
[0020] Additional features of the fabric are defined in the dependent claims.
[0021] For purposes of this application, cross machine direction yarns may be described
as CD yarns, weft yarns, or shute yarns. The binder yarns are preferably in the cross
machine direction, but may alternatively be in the machine direction.
[0022] The present invention will now be described in more complete detail with reference
being made to the drawing figures, which are identified below in which corresponding
components are identified by the same reference numerals.
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] For a more complete understanding of the invention, reference is made to the following
description and accompanying drawings, in which:
Figure 1 shows schematic cross-sectional views of two different pairs of binder yarn
contours for an exemplary fabric according to the present invention;
Figure 2 is a forming surface view of a fabric according to an embodiment of the present
invention;
Figure 3 shows contour profile views of two different pairs of binder yarns from a
fabric according to the present invention;
Figure 4 shows contour profile views of two different pairs of binder yam from another
fabric according to the present invention;
Figure 5 shows contour profile views of the a) warp yarns, b) top shute, and c) bottom
shute from a fabric according to the present invention;
Figure 6 shows schematic cross-sectional views of two different pairs of binder yarn
contours for a second exemplary fabric according to the present invention; and
Figure 7 shows schematic cross-sectional views of two different pairs of binder yam
contours for a third exemplary fabric according to the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0024] The invention pertains to a multi-layer fabric such as a triple layer fabric which
may be utilized in a papermaking process. Such multi-layer fabrics include a first
(top) layer and a second (bottom) layer in which each of the first and second layers
may have a system of machine-direction (MD) yarns and cross-machine direction (CD)
yarns interwoven therewith. The first layer may be a paper side or forming layer upon
which the cellulosic paper/fiber slurry is deposited during the papermaking process
and the second layer may be a machine side or wear side layer. The fabric layers are
bound together by plural pairs of weft binder yarns. Each binder yam within a pair
weaves a different contour pattern and combines with the other binder yam in that
pair to form a plain weave pattern in the top layer (i.e. a sheet support binder (SSB)
sequence) or, alternatively, a non-plain weave pattern. Each pair is comprised of
binding yarns that weave different contour patterns from the next pair. For example,
the fabric may be a triple layer forming fabric having two SSB pairs wherein the binder
yarns in the first pair weave respectively two and three plain weave contours in the
top layer and the second pair weaves four and one plain weave contours respectively.
[0025] Multi-layer fabrics have been previously proposed which incorporate paired binder
yarns where the binder yarns in the pair have different contour patterns. However,
previous fabrics have not included plural different binder yam pairings where not
only are the contour patterns different within each pair, but the contour patterns
are also different between the pairs. This additional feature of the present invention
allows for greater flexibility in designing fabrics with desired characteristics.
[0026] Advantages of the present invention include a monoplane surface for reduced surface
marking and improved paper smoothness. Fabrics according to the present invention
have good stability characteristics for running on high speed papermaking machines.
The present fabrics also have a high number of contact points resulting in good paper
retention.
[0027] Figure 1 shows schematic cross-sectional views of two different pairs of binder yam
contours for an exemplary fabric according to the present invention. In Figure 1,
the plural contours of two binder yarn pairs are shown as they weave with the MD yarns
in the top (forming) layer 101 and bind the bottom (wear side) layer 102. In the present
fabric, the first pair of binder yarns 103, 104 alternates with the second pair of
binder yarns 105, 106; with intrinsic shute yarns (not shown) woven between each pair.
As explained below, this example fabric is referred to as having a 4+1, 2+3 contour
pattern. The numbers indicate the number of knuckles made by a binder yam in the top
layer. For purposes of this application, a knuckle is formed when a CD yam passes
over one or more MD yarns on the outer surface of the fabric. The plus indicates the
presence of a following binder yarn; i.e. the other binder yarn of the pair.
[0028] For the first binder pair of the fabric shown in Figure 1 the first binder yam 103
starts in the top layer 101 and passes over MD yarn 1, under MD yarn 3, over MD yam
5, under MD yam 7, over MD yam 9, under MD yam 11, over MD yam 13, and under MD yam
15 where it crosses with the second binder yam 104. In this manner, the first binder
yam forms four knuckles in the top layer. The first binder yarn then traverses to
the bottom layer 102 and binds with MD yam 18 before traversing back to the top layer
where it crosses with the second binder yarn 102 under MD yam 19 to complete one repeat
of the weave pattern. Hence, the first binder yarn is designated as having a contour
pattern of 4. The second binder yarn 104 begins the pattern in the bottom layer 102
where it binds with MD yarn 8 before traversing to the top layer 101 under MD yam
15. The second binder yarn 104 passes over MD yam 17 to form its only knuckle in the
top layer before returning to the bottom layer under MD yarn 19 to complete the weave
pattern repeat. Hence, the second binder yarn is designated as having a contour pattern
of 1 and this first pair is identified by its binder yarn patterns as 4+1. Note the
first and second binder yarns' contours combine to weave every other MD yarn in the
top layer, thereby producing a plain weave pattern in the top layer. Also note that
in this case the binder pair is intrinsic to the top layer, but simply binds the bottom
layer.
[0029] Similarly for the second binder pair, the third binder yam 105 starts in the top
layer 101 and passes over MD yam 1, under MD yam 3, over MD yam 5, and under MD yarn
7 where it crosses with the fourth binder yam 106. In this manner, the third binder
yarn forms two knuckles in the top layer. The third binder yarn then traverses to
the bottom layer 102 and binds with MD yam 14 before traversing back to the top layer
where it crosses with the fourth binder yarn 106 under MD yarn 19 to complete one
repeat of the weave pattern. The fourth binder yarn 106 begins the pattern in the
bottom layer 102 where it binds with MD yam 4 before traversing to the top layer 101
under MD yam 7. The fourth binder yarn 106 passes over MD yam 9, under MD yam 11,
over MD yam 13, under MD yam 15, and over MD yam 17 to form three knuckles in the
top layer before returning to the bottom layer under MD yam 19 to complete the weave
pattern repeat. Hence, the second binder pair is identified by its binder yam contour
patterns as 2+3. Accordingly, this example fabric is referred to as having a 4+1,
2+3 contour pattern.
[0030] Numerous permutations of binder yam contours are encompassed by the present invention.
For example, fabrics according to the present invention may also have 2+3, 1+4; 3+2,
1+4; 2+3, 4+1; and 3+2, 4+1 contour patterns. Of course, these contour patterns are
simply representative examples of the invention and many additional permutations as
would be apparent to one skilled in art are possible.
[0031] Figure 2 is a forming surface view of an exemplary fabric according to the present
invention. The darker horizontal yarns are intrinsic forming layer shutes 207 woven
in a plain weave pattern. Alternating between these shutes are pairs of 2+3 binder
yarns (205,206) and 4+1 binder yarns (203,204). Accordingly, this exemplary fabric
has a 1:1 forming side shute to binder pair ratio.
[0032] Figures 3 and 4 are profile contour views of two different pairs of binder yarns
extracted from two fabrics produced in accordance with the teaching of the present
invention. In Figure 3, the first pair comprises a first binder yam 303 and a second
binder yarn 304 to produce a 4+1 contour pattern. Whereas, the second pair has a third
binder yam 305 and a fourth binder yam 306 that form a 3+2 contour pattern. Likewise
in Figure 4, the first pair comprises a first binder yarn 403 and a second binder
yarn 404 to produce a 4+1 contour pattern; while the second pair has a third binder
yam 405 and a fourth binder yarn 406 that form a 2+3 contour pattern. In this manner,
the binder yarns in Figure 3 are from a 4+1, 3+2 fabric and Figure 4 are from a 4+1,
2+3 fabric.
[0033] Figure 5 shows contour profile views of the a) warp yarns, b) top shute, and c) bottom
shute from a fabric according to the present invention. The contour profile of the
top layer warp yarn 501 indicates a plain weave surface pattern. The bottom layer
warp yarn 502 is often a larger diameter than the top layer warp yarn in order to
improve the wear resistance of the fabric. The top shute 507 also reflects the plain
weave surface pattern. The bottom shute 508 is also typically a larger diameter for
wear resistance. The bottom shute may also form long floats or runners on the bottom
surface of the fabric. The top and bottom shutes are intrinsic to their respective
layers and are woven between the pairs of binder yarns. The shute ratio of the present
fabrics can be varied by adjusting the number of top and bottom shutes, or by not
having any functional top or bottom shutes.
[0034] Figure 6 shows schematic cross-sectional views of two different pairs of binder yam
contours for a second exemplary fabric according to the present invention. In Figure
6, the plural contours of two binder yam pairs are shown as they weave with the MD
yarns in the top (forming) layer 601 and bind the bottom (wear side) layer 602. In
the present fabric, the first pair of binder yarns 603, 604 alternates with the second
pair of binder yarns 605, 606; with intrinsic shute yarns (not shown) woven between
each pair. This second example fabric has a 3+2, 4+1 contour pattern. Note that in
this fabric, one of the binder yarns in each pair forms a double knuckle contour (also
referred to as a double lock) on the wear side surface of the fabric. Specifically,
binder yam 604 binds with MD yarns 4 and 8 in the bottom layer 602 and binder yam
606 binds with MD yarns 6 and 10 in the bottom layer 602 to each form a double knuckle
in the wear side surface.
[0035] Another aspect of the present invention includes patterns that do not produce a plain
weave pattern on the paper forming surface of the fabric. For example, Figure 7 shows
schematic cross-sectional views of two different pairs of binder yam contours (first
pair 703, 704 and second pair 705, 706) which produce a three-shed pattern on the
paper forming surface. Like the example fabric shown in Figure 6, the fabric shown
in Figure 7 also has a 3+2, 4+1 contour pattern, but its pattern repeats every 15
frames rather than every 10 frames. Accordingly, the fabric in Figure 7 requires a
30 harness loom to weave rather than a 20 harness loom as required by the fabric in
Figure 6. To produce the three-shed pattern, each binder yarn pair weaves beneath
every third MD yam in the top layer. Also note the fourth binder yarn 706 forms a
double knuckle contour in the bottom layer. Many other non-plain weave surface patterns
are encompassed by the invention, including patterns which require looms having a
large number of harnesses.
[0036] As mentioned previously, the present invention is a derivative of the sheet support
binder (SSB) concept in which the binder yarns are typically part of the structure
supporting the fabric. Commonly, these binder yarns are paired weft binder yarns intrinsic
to the forming layer and simply bind with the wear side layer. In a preferred embodiment
of the present invention, the binder yarns combine to produce a plain weave pattern
with the topside MD yarns and are therefore intrinsic to the top layer.
[0037] Other aspects of the present invention include that the pattern may have forming
side binder shute ratios of 1:1, 2:1, 3:2, 3:1, or any other shute ratio known in
the art. The forming side binder shute ratio is defined herein as being the ratio
of forming side shutes (or regular CD yarns) to pairs of binder yarns in the forming
layer of the fabric; wherein each pair of binder yarns counts as a single shute. The
fabric may also have a forming side to wear side shute ratio of 1:1, 2:1, 3:2, 3:1,
or any other suitable shute ratio. The binding yarns may be made of the same or different
materials and be of different diameters. The binder yarns may also form double knuckle
contours on the wear side surface of the fabric. The binder yarns may run in the cross
machine direction or alternatively in the machine direction. The binder yam pairs
may form a plain weave pattern or a non-plain weave pattern in the top layer. Fabrics
according to the present invention may be woven on various size looms, including but
not limited to 20, 30, 40, and 48 harness looms. Note, these examples are simply representative
examples of the invention and are not meant to limit the invention.
[0038] The fabric according to the present invention may comprise monofilament yarns. The
yarns may be polyester monofilament and/or some may be polyester or polyamide. In
addition, the fabric may comprise multifilament yarns, plied or mono-filament yarns,
bi-component yarns, and/or any other suitable yarns known in the art. The yarns may
have a circular cross-sectional shape with one or more different diameters. Further,
in addition to a circular cross-sectional shape, one or more of the yarns may have
other cross-sectional shapes such as a rectangular cross-sectional shape or another
non-round cross-sectional shape.
[0039] Modifications to the above would be obvious to those of ordinary skill in the art,
but would not bring the invention so modified beyond the scope of the present invention
as defined in the appended claims.
1. A papermaker's fabric, comprising:
a first layer of machine direction (MD) yarns (101; 501; 601) belonging to a forming
layer of the fabric;
a second layer of MD yarns (102; 502; 602) belonging to a wear side layer of the fabric;
a first system (103, 104; 203, 204; 303, 304; 403, 404; 603, 604; 703, 704) of paired
cross-machine direction (CD) yarns comprising first binder yarns (103; 203; 303; 403;
603; 703) weaving a first contour pattern and second binder yarns (104; 204; 304;
404; 604; 704) weaving a second contour pattern different from the first contour pattern;
a second system (105, 106; 205, 206; 305, 306; 405, 406; 605, 606; 705, 706) of paired
CD yarns comprising third binder yarns (105; 205; 305; 405; 605; 705) weaving a third
contour pattern and fourth binder yarns (106; 206; 306; 406; 606; 706) weaving a fourth
contour pattern different from the third contour pattern;
wherein the paired CD yarns act together as a pair to effectively weave one unbroken
contour in said forming layer of said fabric,
wherein the paired CD yarns of the first and second systems are each intrinsic to
said forming layer and each binds with said wear side layer of said fabric;
wherein the first and second systems of paired CD yarns weave different contour patterns;
characterized in that the first, second, third and fourth binder yarns have a contour pattern selected
from the group consisting of 4+1, 2+3; 2+3, 1+4; 3+2, 1+4; 2+3, 4+1; and 3+2, 4+1,
wherein said patterns indicate the number of knuckle(s) formed on said forming layer
within one weave pattern repeat of said fabric.
2. The papermaker's fabric according to claim 1, wherein the fabric is a weft-bound triple
layer forming fabric.
3. The papermaker's fabric according to claim 1, further comprising a third system of
CD yarns interwoven with the first layer of MD yarns between pairs of the first and
second systems of binder yarns.
4. The papermaker's fabric according to claim 1, further comprising a fourth system of
CD yarns interwoven with the second layer of MD yarns.
5. The papermaker's fabric according to claim 1, wherein the binder yarns in each pair
of the first and second systems (103, 104; 203, 204; 303, 304; 403, 404; 603, 604;
703, 704) (105, 106; 205, 206; 305, 306; 405, 406; 605, 606; 705, 706) combine to
weave every other MD yarn in the first layer (101; 501; 601), thereby producing a
plain weave pattern in the forming layer.
6. The papermaker's fabric according to claim 1, wherein at least some of the binder
yarns (604, 606; 706) bind with alternate MD yarns (6, 10) in the second layer (602)
to each form a double knuckle in the wear side surface.
7. The papermaker's fabric according to claim 1, wherein at least some of the MD yarns
and CD yarns are monofilament yarns.
8. The fabric according to claim 1, wherein at least some of the MD yarns and CD yarns
are one of polyamide yarns or polyester yarns.
9. The fabric according to claim 1, wherein at least some of the MD yarns and CD yarns
have one of a circular cross-sectional shape, a rectangular cross-sectional shape
and a non-round cross- sectional shape.
10. A papermaker' s fabric, comprising:
a first layer of cross-machine direction (CD) yarns belonging to a forming layer of
the fabric;
a second layer of CD yarns belonging to a wear side layer of the fabric;
a first system of paired machine direction (MD) yarns comprising first binder yarns
weaving a first contour pattern and second binder yarns weaving a second contour pattern
different from the first contour pattern;
a second system of paired MD yarns comprising third binder yarns weaving a third contour
pattern and fourth binder yarns weaving a fourth contour pattern different from the
third contour pattern;
wherein the paired MD yarns act together as a pair to effectively weave an unbroken
contour in said forming layer of the fabric;
wherein the paired MD yarns of the first and second systems are each intrinsic to
the forming layer and each binds with the wear side layer of said fabric;
wherein the first and second systems of paired MD yarns weave different contour patterns;
and
wherein the first, second, third and fourth binder yarns have a contour pattern selected
from the group consisting of 4+1, 2+3; 2+3, 1+4; 3+2, 1+4; 2+3, 4+1; and 3+2, 4+1,
wherein said patterns indicate.the number of knuckle(s) formed on said forming layer
within one weave pattern repeat of said fabric.
11. The papermaker's fabric according to claim 10, wherein the fabric is a warp-bound
triple layer forming fabric.
1. Papiermachergewebe, umfassend:
eine erste Lage von Kettfäden oder Maschinenrichtung-Fäden (101; 501; 601), nachfolgend
MD-Fäden genannt, gehörend zu einer Formierlage des Gewebes;
eine zweite Lage von MD-Fäden (102; 502; 602), gehörend zu einer Nutzungsseite-Lage
des Gewebes;
ein ersten System (103, 104; 203, 204; 303, 304; 403, 404; 603, 604; 703, 704) von
paarweisen Schuss-Fäden oder Quermaschinen-Richtung-Fäden, nachfolgend CD-Fäden genannt,
umfassend erste Bindefäden (103; 203; 303; 403; 603; 703), ein erstes Konturmuster
webend, sowie zweite Bindefäden (104; 204; 304; 404; 604; 704), ein zweites Konturmuster,
unterschiedlich von dem ersten Konturmuster, webend;
ein zweites System (105, 106; 205, 206; 305, 306; 405, 406; 605, 606; 705, 706) von
paarweisen oder gepaarten CD-Fäden oder -Garnen, umfassend dritte Bindefäden (105;
205; 305; 405; 605; 705), ein drittes Konturmuster webend, sowie vierte Bindefäden
(106; 206; 306; 406; 606; 706), ein viertes Konturmuster, unterschiedlich von dem
dritten Konturmuster, webend;
wobei die paarweisen oder gepaarten CD-Fäden oder -Garne zusammenwirken als ein Paar
zum effektiven Weben einer ununterbrochenen oder ungebrochenen Kontur in der Formierlage
des Gewebes,
wobei die paarweisen oder gepaarten CD-Fäden der ersten und zweiten Systeme jeweils
intrinsisch sind bezüglich der Formierlage und jeweils verbunden sind beziehungsweise
werden mit der Nutz- oder Abnutzungseite-Lage des Gewebes;
wobei die ersten und zweiten Systeme von gepaarten CD-Fäden unterschiedliche Konturmuster
weben;
dadurch gekennzeichnet, dass die ersten, zweiten, dritten und vierten Bindefäden ein Konturmuster haben, ausgewählt
aus der Gruppe, gebildet aus 4 + 1, 2 +3; 2 + 3, 1 + 4; 3 + 2, 1 + 4; 2 + 3, 4 + 1;
und 3 + 2, 4 + 1, wobei die Muster die Anzahl an Knoten angeben, gebildet an der Formierlage
innerhalb einer Webmusterwiederholung des Gewebes.
2. Papiermachergewebe nach Anspruch 1, bei welchem das Gewebe ein Schussverbunddreilagenformiergewebe
ist.
3. Papiermachergewebe nach Anspruch 1, ferner umfassend ein drittes System von CD-Fäden
oder -Garnen, verwoben mit der ersten Lage an MD-Fäden oder -Garnen, zwischen Paaren
von ersten und zweiten Systemen von Bindefäden oder -garnen.
4. Papiermachergewebe nach Anspruch 1, ferner umfassend ein viertes System von CD-Fäden,
verwoben mit der zweiten Lage an MD-Fäden.
5. Papiermachergewebe nach Anspruch 1, bei welchem die Bindefäden in jedem Paar der ersten
und zweiten Systeme (103, 104; 203, 204; 303, 304; 403, 404; 603, 604; 703, 704) (105,
106; 205, 206; 305, 306; 405, 406; 605, 606; 705, 706) kombinieren oder wechselwirken
zum Weben jedes anderen MD-Fadens oder -Garnes in der ersten Lage (101; 501; 601),
wodurch ein Vollwebmuster in der Formierlage gebildet wird.
6. Papiermachergewebe nach Anspruch 1, bei welchem zumindest einige der Bindefäden (604,
606; 706) mit abwechselnden MD-Fäden (6, 10) in der zweiten Lage (602) binden, um
jeweils einen Doppelknoten in der Nutzseite-Fläche beziehungsweise der Abnutzungsseite-Fläche
zu bilden.
7. Papiermachergewebe nach Anspruch 1, bei welchem zumindest einige der MD-Fäden oder
-Garne und der CD-Fäden oder -Garne Monofilamentfäden oder -garne sind.
8. Gewebe nach Anspruch 1, bei welchem zumindest einige der MD-Fäden und der CD-Fäden
Polyamidfäden oder -garne oder Polyesterfäden oder -garne sind.
9. Gewebe nach Anspruch 1, bei welchem zumindest einige der MD-Fäden und der CD-Fäden
eine kreisförmige Querschnittsform, eine rechteckige Querschnittsform oder eine nicht-runde
Querschnittsform aufweisen.
10. Papiermachergewebe, umfassend:
eine erste Lage von Schussfäden oder Quer-Maschinen-Richtung (CD)-Fäden, gehörig zu
einer Formierlage des Gewebes;
eine zweite Lage von CD-Fäden, gehörend zu einer Nutzseite-Lage oder einer Abnutzungsseite-Lage
des Gewebes;
ein erstes System von paarweisen oder gepaarten Kettfäden oder Maschinenrichtungs-(MD)-Fäden,
umfassend erste Bindefäden, ein erstes Konturmuster webend, und zweite Bindefäden,
ein zweites Konturmuster, unterschiedlich von dem ersten Konturmuster, webend;
ein zweites System von gepaarten oder paarweisen MD-Fäden, umfassend dritte Bindefäden,
ein drittes Konturmuster webend, und vierte Bindefäden, ein viertes Konturmuster,
unterschiedlich von dem dritten Konturmuster, webend;
wobei die paarweisen oder gepaarten MD-Fäden oder -Garne zusammenwirken als ein Paar,
zum effektiven Weben einer ungebrochenen oder ununterbrochenen Kontur in der Formierlage
des Gewebes;
wobei die paarweisen oder gepaarten MD-Fäden der ersten und zweiten Systeme jeweils
intrinsisch sind bezüglich der Formierlage und jeweils binden mit der Nutzungs- oder
Abnutzungsseite-Lage des Gewebes;
wobei die ersten und zweiten Systeme von paarweisen oder gepaarten MD-Fäden unterschiedliche
Konturmuster weben; und
wobei die ersten, zweiten, dritten und vierten Bindefäden ein Konturmuster aufweisen,
ausgewählt aus der Gruppe, gebildet aus 4 + 1, 2 +3; 2 + 3, 1 + 4; 3 + 2, 1 + 4; 2
+ 3, 4 + 1; und 3 + 2, 4 + 1, wobei die Muster die Anzahl an Knoten angeben, gebildet
an der Formierlage innerhalb einer Webmusterwiederholung des Gewebes.
11. Papiermachergewebe nach Anspruch 10, bei welchem das Gewebe ein Schussverbunddreilagenformiergewebe
ist.
1. Tissu de machine de fabrication de papier, comprenant :
une première couche de fils de sens machine (MD) (101 ; 501 ; 601) appartenant à une
couche de formation du tissu ;
une deuxième couche de fils de sens machine (102 ; 502 ; 602) appartenant à une couche
de côté d'usure du tissu ;
un premier système (103, 104 ; 203, 204 ; 303, 304 ; 403, 404 ; 603, 604 ; 703, 704)
de fils de sens transversal au sens machine (CD) appariés, comprenant des premiers
fils de liant (103 ; 203 ; 303 ; 403 ; 603 ; 703) tissant un premier motif de contour
et des deuxièmes fils de liant (104 ; 204 ; 304 ; 404 ; 604 ; 704) tissant un deuxième
motif de contour différent du premier motif de contour ;
un deuxième système (105, 106 ; 205, 206 ; 305, 306 ; 405, 406 ; 605, 606 ; 705, 706)
de fils de sens transversal au sens machine appariés, comprenant des troisièmes fils
de liant (105 ; 205 ; 305 ; 405 ; 605 ; 705) tissant un troisième motif de contour
et des quatrièmes fils de liant (106 ; 206 ; 306 ; 406 ; 606 ; 706) tissant un quatrième
motif de contour différent du troisième motif de contour ;
dans lequel les fils de sens transversal au sens machine appariés agissent ensemble
en paire de façon à tisser efficacement un contour non rompu dans ladite couche de
formation dudit tissu,
dans lequel les fils de sens transversal au sens machine appariés des premier et deuxième
systèmes sont chacun intrinsèques à ladite couche de formation et se lient chacun
à ladite couche de côté d'usure dudit tissu ;
dans lequel les premier et deuxième systèmes de fils de sens transversal au sens machine
appariés tissent des motifs de contour différents ;
caractérisé en ce que les premiers, deuxièmes, troisièmes et quatrièmes fils de liant ont un motif de contour
sélectionné parmi le groupe comprenant 4 + 1, 2 + 3 ; 2 + 3, 1 + 4 ; 3 + 2, 1 + 4
; 2 + 3, 1 + 4; et 3 + 2, 4 + 1, lesdits motifs indiquant le nombre de point(s) d'entrelacement
formé(s) sur ladite couche de formation à l'intérieur d'une répétition de motif de
tissage dudit tissu.
2. Tissu de machine de fabrication de papier selon la revendication 1, dans lequel le
tissu est un tissu de formation de couche triple liée par une trame.
3. Tissu de machine de fabrication de papier selon la revendication 1, comprenant de
plus un troisième système de fils de sens transversal au sens machine entrelacés avec
la première couche de fils de sens machine entre des paires des premier et deuxième
systèmes de fils de liant.
4. Tissu de machine de fabrication de papier selon la revendication 1, comprenant de
plus un quatrième système de fils de sens transversal au sens machine entrelacés avec
la deuxième couche de fils de sens machine.
5. Tissu de machine de fabrication de papier selon la revendication 1, dans lequel les
fils de liant dans chaque paire des premier et deuxième systèmes (103, 104 ; 203,
204 ; 303, 304 ; 403, 404 ; 603, 604 ; 703, 704) (105, 106 ; 205, 206 ; 305, 306 ;
405, 406 ; 605, 606 ; 705, 706) se combinent de façon à tisser un fil de sens machine
sur deux dans la première couche (101 ; 501 ; 601), de façon à produire ainsi un motif
d'armure unie dans la couche de formation.
6. Tissu de machine de fabrication de papier selon la revendication 1, dans lequel au
moins certains des fils de liant (604, 606 ; 706) se lient avec des fils de sens machine
alternés (6, 10) dans la deuxième couche (602), de façon à former chacun un double
point d'entrelacement dans la surface de côté d'usure.
7. Tissu de machine de fabrication de papier selon la revendication 1, dans lequel au
moins certains des fils de sens machine et des fils de sens transversal au sens machine
sont des fils monofilament.
8. Tissu selon la revendication 1, dans lequel au moins certains des fils de sens machine
et des fils de sens transversal au sens machine sont l'un parmi des fils de polyamide
ou des fils de polyester.
9. Tissu selon la revendication 1, dans lequel au moins certains des fils de sens machine
et des fils de sens transversal au sens machine ont au moins l'une parmi une forme
de section transversale circulaire, une forme de section transversale rectangulaire
et une forme de section transversale non ronde.
10. Tissu de machine de fabrication de papier, comprenant :
une première couche de fils de sens transversal au sens machine (CD) appartenant à
une couche de formation du tissu ;
une deuxième couche de fils de sens transversal au sens machine appartenant à une
couche de côté d'usure du tissu ;
un premier système de fils de sens machine (MD) appariés, comprenant des premiers
fils de liant tissant un premier motif de contour et des deuxièmes fils de liant tissant
un deuxième motif de contour différent du premier motif de contour ;
un deuxième système de fils de sens machine appariés, comprenant des troisièmes fils
de liant tissant un troisième motif de contour et des quatrièmes fils de liant tissant
un quatrième motif de contour différent du troisième motif de contour ;
dans lequel les fils de sens machine appariés agissent ensemble en paire de façon
à tisser efficacement un contour non rompu dans ladite couche de formation du tissu,
dans lequel les fils de sens machine appariés des premier et deuxième systèmes sont
chacun intrinsèques à la couche de formation et se lient chacun à la couche de côté
d'usure dudit tissu ;
dans lequel les premier et deuxième systèmes de fils de sens machine appariés tissent
des motifs de contour différents ;
et dans lequel les premiers, deuxièmes, troisièmes et quatrièmes fils de liant ont
un motif de contour sélectionné parmi le groupe comprenant 4 + 1, 2 + 3 ; 2 + 3, 1
+ 4 ; 3 + 2, 1 + 4 ; 2 + 3, 1 + 4 ; et 3 + 2, 4 + 1, lesdits motifs indiquant le nombre
de point(s) d'entrelacement formé(s) sur ladite couche de formation à l'intérieur
d'une répétition de motif de tissage dudit tissu.
11. Tissu de machine de fabrication de papier selon la revendication 10, dans lequel le
tissu est un tissu de formation de couche triple liée par une chaîne.